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首页> 外文期刊>Biophysical Journal >Solution structure and backbone dynamics of human liver fatty acid binding protein: Fatty acid binding revisited
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Solution structure and backbone dynamics of human liver fatty acid binding protein: Fatty acid binding revisited

机译:人肝脂肪酸结合蛋白的溶液结构和骨架动力学:脂肪酸结合的重新探讨

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Liver fatty acid binding protein (L-FABP), a cytosolic protein most abundant in liver, is associated with intracellular transport of fatty acids, nuclear signaling, and regulation of intracellular lipolysis. Among the members of the intracellular lipid binding protein family, L-FABP is of particular interest as it can i), bind two fatty acid molecules simultaneously and ii), accommodate a variety of bulkier physiological ligands such as bilirubin and fatty acyl CoA. To better understand the promiscuous binding and transport properties of L-FABP, we investigated structure and dynamics of human L-FABP with and without bound ligands by means of heteronuclear NMR. The overall conformation of human L-FABP shows the typical β-clam motif. Binding of two oleic acid (OA) molecules does not alter the protein conformation substantially, but perturbs the chemical shift of certain backbone and side-chain protons that are involved in OA binding according to the structure of the human L-FABP/OA complex. Comparison of the human apo and holo L-FABP structures revealed no evidence for an "open-cap" conformation or a "swivel-back" mechanism of the K90 side chain upon ligand binding, as proposed for rat L-FABP. Instead, we postulate that the lipid binding process in L-FABP is associated with backbone dynamics.
机译:肝脂肪酸结合蛋白(L-FABP)是肝脏中含量最高的胞质蛋白,与脂肪酸的细胞内转运,核信号传导和细胞内脂解的调节有关。在细胞内脂质结合蛋白家族的成员中,L-FABP尤其令人关注,因为它可以i),同时结合两个脂肪酸分子和ii),容纳各种较大的生理配体,例如胆红素和脂肪酰基CoA。为了更好地了解L-FABP的混杂结合和转运特性,我们通过异核NMR研究了具有和没有结合配体的人L-FABP的结构和动力学。人L-FABP的总体构象显示出典型的β-蛤基序。两个油酸(OA)分子的结合不会实质性地改变蛋白质的构象,但会干扰人L-FABP / OA复合物的结构,导致某些与OA结合的主链和侧链质子的化学位移。人载脂蛋白和全脂L-FABP结构的比较显示,没有证据表明配体结合后K90侧链具有“开盖”构象或“回旋”机制,这是针对大鼠L-FABP提出的。相反,我们假设L-FABP中的脂质结合过程与骨架动力学有关。

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